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A unified model of high-temperature fuel-cell heat- engine hybrid systems and analyses of its optimum performances

机译:高温燃料电池热机混合系统的统一模型及其最佳性能分析

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摘要

On the basis of the models of various developed high-temperature fuel-cell heat-engine hybrid systems, a unified model of hybrid systems is proposed. General expressions for the power output and efficiency of hybrid systems, high-temperature fuel cells such as solid oxide fuel cells (SOFCs) and molten carbonate fuel cells (MCFCs), and heat engines including the Brayton, Otto, Diesel, Atkinson, Braysson, and Carnot engines are, respectively, derived by using the theories of electrochemistry and non-equilibrium thermodynamics. The effects of main irreversible losses existing in real fuel cells and heat engines on the performance of hybrid systems are investigated. The general performance characteristics and optimal operating regions of some of the key parameters of hybrid systems are discussed in detail. A variety of special typical cases are discussed. The important results in the literature can be readily reproduced, and the interesting findings of our study are presented.
机译:在各种已开发的高温燃料电池热机混合动力系统模型的基础上,提出了混合动力系统的统一模型。混合动力系统,高温燃料电池(例如固体氧化物燃料电池(SOFC)和熔融碳酸盐燃料电池(MCFC))以及热机(包括Brayton,Otto,Diesel,Atkinson,Braysson, Carnot发动机和Carnot发动机分别通过使用电化学和非平衡热力学理论推导而来。研究了实际燃料电池和热机中存在的主要不可逆损失对混合动力系统性能的影响。详细讨论了混合动力系统某些关键参数的一般性能特征和最佳工作区域。讨论了各种特殊的典型情况。文献中的重要结果可以很容易地再现,并且提出了我们研究的有趣发现。

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